Environmental Performance of Small-Scale Seawater Reverse Osmosis Plant for Rural Area Water Supply

Author:

Abdul Ghani LatifahORCID,Ali Nora’aini,Nazaran Ilyanni Syazira,Hanafiah Marlia M.

Abstract

Seawater desalination is an alternative technology to provide safe drinking water and to solve water issues in an area having low water quality and limited drinking water supply. Currently, reverse osmosis (RO) is commonly used in the desalination technology and experiencing significant growth. The aim of this study was to analyze the environmental impacts of the seawater reverse osmosis (SWRO) plant installed in Kampung Pantai Senok, Kelantan, as this plant was the first installed in Malaysia. The software SimaPro 8.5 together with the ReCiPe 2016 database were used as tools to evaluate the life cycle assessment (LCA) of the SWRO plant. The results showed that the impact of global warming (3.90 kg CO2 eq/year) was the highest, followed by terrestrial ecotoxicity (1.62 kg 1,4-DCB/year) and fossil resource scarcity (1.29 kg oil eq/year). The impact of global warming was caused by the natural gas used to generate the electricity, mainly during the RO process. Reducing the environmental impact can be effectively achieved by decreasing the electricity usage for the seawater desalination process. As a suggestion, electricity generation can be overcome by using a high-flux membrane with other suitable renewable energy for the plant such as solar and wind energy.

Publisher

MDPI AG

Subject

Filtration and Separation,Chemical Engineering (miscellaneous),Process Chemistry and Technology

Reference53 articles.

1. Water desalination technologies utilizing conventional and renewable energy sources;Mahmoud;Int. J. Low-Carbon Technol.,2014

2. Chemical Safety of Drinking Water: Assessing Priorities for Risk Management;Thompson,2007

3. Economically challenged and water scarce: Identification of global populations most vulnerable to water crises;Taikan;Int. J. Water Resour. Dev.,2020

4. Environmental life cycle assessment of reverse osmosis desalination: The influence of different life cycle impact assessment methods on the characterization results

5. Sustainable seawater desalination by permeate gap membrane distillation technology;Farzaneh;J. Energy Procedia,2017

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